Valentine's Day Gifts

Advertisement: Jewelry, Medical Supplies and Equipment
Coronavirus Updates, Luxury Eyewear
Tools and Fashion Accessories, Cell Phone and Accessories
Outdoor and Sports Fitness, Medical Supplies and Equipment

Showing posts with label Health. Show all posts
Showing posts with label Health. Show all posts

Saturday, January 1, 2011

Timeline of vaccines

This is a timeline of the development of prophylactic human vaccines. Early vaccines may be listed by the first year of development or testing, but later entries usually show the year the vaccine finished trials and became available on the market. Although vaccines exist for the diseases listed below, only smallpox has been eliminated worldwide. The other illnesses continue to cause tens of millions of deaths each year. Currently, polio and measles are the targets of active worldwide eradication 

18th century

1796 vaccine for smallpox developed by Edward Jenner. This was the first vaccine developed as a treatment for any disease, and was derived from a weakened version of the disease cowpox.

19th century

1879 First vaccine for cholera
1885 First vaccine for rabies by Louis Pasteur and Émile Roux
1890 First vaccine for tetanus
1896 First vaccine for typhoid fever
1897 First vaccine for bubonic plague

20th century

1921 First vaccine for diphtheria
1926 First vaccine for pertussis (whooping cough)
1927 First vaccine for tuberculosis
1932 First vaccine for yellow fever
1937 First vaccine for typhus
1945 First vaccine for influenza
1952 First vaccine for polio by Jonas Salk
1954 First vaccine for Japanese encephalitis
1954 First vaccine for anthrax
1957 First vaccine for adenovirus-4 and 7
1962 First oral polio vaccine
1963 First vaccine for measles
1967 First vaccine for mumps
1970 First vaccine for rubella
1974 First vaccine for chicken pox
1977 First vaccine for pneumonia (Streptococcus pneumoniae)
1978 First vaccine for meningitis (Neisseria meningitidis)
1981 First vaccine for hepatitis B (first vaccine to target a cause of cancer)
1985 First vaccine for Haemophilus influenzae type b (HiB)
1992 First vaccine for hepatitis A
1998 First vaccine for Lyme disease
1998 First vaccine for rotavirus

21st century

2003 First nasal vaccine for influenza approved in US, FluMist by MedImmune
2006 First vaccine for human papillomavirus, Gardasil by Merck & Co.
2009 Swine flu vaccine

(source:wikipedia)

Timeline of antibiotics

This is the timeline of antimicrobial (anti-infective) therapy. The years show when given was released onto the pharmaceutical market. Please note that this is NOT a timeline of the antibiotic itself!
1910 - Arsphenamine aka Salvarsan
1912 - Neosalvarsan
1935 - Prontosil (an oral precursor to sulfanilimide)
1936 - Sulfanilimide
1938 - Sulfapyridine (M&B 693)
1939 - sulfacetamide
1940 - sulfamethizole
1942 - benzylpenicillin
1942 - gramicidin S
1942 - sulfadimidine
1943 - sulfamerazine
1944 - streptomycin
1947 - sulfadiazine
1948 - chlortetracycline
1949 - chloramphenicol
1949 - neomycin
1950 - oxytetracycline
1950 - penicillin G procaine
1952 - erythromycin
1954 - benzathine penicillin
1955 - spiramycin
1955 - tetracycline
1955 - thiamphenicol
1955 - vancomycin
1956 - phenoxymethylpenicillin
1958 - colistin
1958 - demeclocycline
1959 - virginiamycin
1960 - methicillin
1960 - metronidazole
1961 - ampicillin
1961 - spectinomycin
1961 - sulfamethoxazole
1961 - trimethoprim
1962 - cloxacillin
1962 - fusidic acid
1963 - fusafungine
1963 - lymecycline
1964 - gentamicin
1966 - doxacycline
1967 - carbenicillin
1967 - rifampicin
1968 - clindamycin
1970 - cefalexin
1971 - cefazolin
1971 - pivampicillin
1971 - tinidazole
1972 - amoxicillin
1972 - cefradine
1972 - minocycline
1972 - pristinamycin
1973 - fosfomycin
1974 - talampicillin
1975 - tobramycin
1975 - bacampicillin
1975 - ticarcillin
1976 - amikacin
1977 - azlocillin
1977 - cefadroxil
1977 - cefamandole
1977 - cefoxitin
1977 - cefuroxime
1977 - mezlocillin
1977 - pivmecillinam
1979 - cefaclor
1980 - cefmetazole
1980 - cefotaxime
1980 - cefsulodin
1980 - piperacillin
1981 - amoxicillin/clavulanic acid (co-amoxiclav)
1981 - cefperazone
1981 - cefotiam
1981 - cefsulodin
1981 - latamoxef
1981 - netelmicin
1982 - apalcillin
1982 - ceftriaxone
1982 - micronomicin
1983 - cefmenoxime
1983 - ceftazidime
1983 - ceftiroxime
1983 - norfloxacin
1984 - cefonicid
1984 - cefotetan
1984 - temocillin
1985 - cefpiramide
1985 - imipenem/cilastatin
1985 - ofloxacin
1986 - mupirocin
1986 - aztreonam
1986 - cefoperazone/sulbactam
1986 - ticarcillin/clavulanic acid
1987 - ampicillin/sulbactam
1987 - cefixime
1987 - roxithromycin
1987 - sultamicillin
1987 - ciprofloxacin
1987 - rifaximin
1988 - azithromycin
1988 - flomoxef
1988 - isepamycin
1988 - midecamycin
1988 - rifapentine
1988 - teicoplanin
1989 - cefpodoxime
1989 - enrofloxacin
1989 - lomefloxacin
1990 - arbekacin
1990 - cefozidime
1990 - clarithromycin
1991 - cefdinir
1992 - cefetamet
1992 - cefpirome
1992 - cefprozil
1992 - ceftibufen
1992 - fleroxacin
1992 - loracarbef
1992 - piperacillin/tazobactam
1992 - rufloxacin
1993 - brodimoprim
1993 - dirithromycin
1993 - levofloxacin
1993 - nadifloxacin
1993 - panipenem/betamipron
1993 - sparfloxacin
1994 - cefepime
1999 - quinupristin/dalfopristin
2000 - linezolid
2001 - telithromycin
2003 - daptomycin
2005 - tigecycline
2005 - doripenem
2009 - telavancin

See also


(source:wikipedia)

Timeline of medicine and medical technology

Timeline of the history of medicine and medical technology.

Antiquity

2600 ac – Imhotep wrote texts on ancient Egyptian medicine describing diagnosis and treatment of 200 diseases in 3rd dynasty Egypt.
2596 BC – The Huangdi Neijing (Yellow Emperor's Classic of Internal Medicine) is published, laying the framework for traditional Chinese medicine
1500 BC – Saffron used as a medicine on the Aegean island of Thera in ancient Greece
500 BC – Bian Que becomes the earliest physician known to use acupuncture and pulse diagnosis
420 BC – Hippocrates of Cos maintains that diseases have natural causes and puts forth the Hippocratic Oath, marking the birth of medicine in the west
280 BC – Herophilus studies the nervous system and distinguishes between sensory nerves and motor nerves
250 BC – Erasistratus studies the brain and distinguishes between the cerebrum and cerebellum
200 BC – the Charaka Samhita uses a rational approach to the causes and cure of disease and uses objective methods of clinical examination
50–70 – Pedanius Dioscorides writes De Materia Medica – a precursor of modern pharmacopeias that was in use for almost 1600 years
180 – Galen studies the connection between paralysis and severance of the spinal cord
220 – Zhang Zhongjing publishes Shang Han Lun (On Cold Disease Damage), the oldest medical textbook in the world
270 – Huangfu Mi writes the Zhenjiu Jiayijing (The ABC Compendium of Acupuncture), the first textbook focusing solely on acupuncture
400 – the Sushruta Samhita is published, laying the framework for Ayurvedic medicine

]Middle Ages

This section may contain inappropriate or misinterpreted citations that do not verify the text. Please help improve this article by checking for inaccuracies. (help, talk, get involved!) (September 2010)
750 – Kawsar Ahmed writes the Ayurvedic text Nidana where he lists diseases along with their causes, symptoms, and complications.
c. 800–873 – Al-Kindi (Alkindus) introduces quantification into medicine with his De Gradibus
c. 830–870 – Hunayn ibn Ishaq translates Galen's works into Arabic
c. 838–870 – Ali ibn Sahl Rabban al-Tabari, a pioneer of pediatrics and the field of child development, writes the first encyclopedia of medicine.
c. 865–925 – Rhazes pioneers pediatrics, and makes the first clear distinction between smallpox and measles in his al-Hawi.
1000 – Abulcasis establishes surgery as a profession of in his Kitab al-Tasrif, which remains a standard textbook in Muslim and European universities until the 16th century. The book described the plaster cast, inhalant anesthesia, and many surgical instruments.
1021 – Alhazen completes his Book of Optics, which made important advances in ophthalmology and eye surgery, as it correctly explained the process of visual perception.
c. 1030 – Avicenna writes The Book of Healing and The Canon of Medicine, in which he establishes experimental medicine and evidence-based medicine. The Canon remains a standard textbook in Muslim and European universities until the 18th century. The book's contributions to medicine includes the introduction of clinical trials, the discovery of contagious diseases, the distinction of mediastinitis from pleurisy, the contagious nature of phthisis, the distribution of diseases by water and soil, and the first careful descriptions of skin troubles, sexually transmitted diseases, perversions, and nervous ailments, as well the use of ice to treat fevers, and the separation of medicine from pharmacology.
1100–1161 – Avenzoar carries out human dissections and postmortem autopsy, and proves that the skin disease scabies is caused by a parasite, which contradicted the erroneous theory of humorism. He was also the first to provide a real scientific etiology for the inflammatory diseases of the ear, and the first to clearly discuss the causes of stridor. Modern anesthesia was also developed in al-Andalus by the Muslim anesthesiologists Ibn Zuhr and Abulcasis. They utilized oral as well as inhalant anesthetics, and they performed hundreds of surgeries under inhalant anesthesia with the use of narcotic-soaked sponges which were placed over the face.
1242 – Ibn an-Nafis suggests that the right and left ventricles of the heart are separate and discovers the pulmonary circulation (the cycle involving the ventricles of the heart and the lungs) and coronary circulation, for which he is considered the pioneer of circulation theory and one of the greatest physiologists of the Middle Ages. He emphasized the rigours of verification by measurement, observation and experiment, and was an early proponent of experimental medicine, postmortem autopsy, and human dissection. He also discredited many other erroneous Avicennian and Galenic doctrines on the four humours, pulse bones, muscles, intestines, sensory organs, bilious canals, esophagus, stomach, and the anatomy of other parts of the human body. Ibn al-Nafis also drew diagrams to illustrate different body parts in his new physiological system.
c. 1248 – Ibn al-Baitar wrote on botany and pharmacy, studied animal anatomy and medicine, and was a pioneer of veterinary medicine.
1249 – Roger Bacon writes about convex lens spectacles for treating long-sightedness
14th century – When the Black Death bubonic plague reached al-Andalus, Ibn Khatima hypothesized that infectious diseases are caused by microorganisms which enter the human body.
1313–1374 – Ibn Khatima wrote a treatise called On the Plague, in which he establishes the existence of contagion through "experience, investigation, the evidence of the senses and trustworthy reports." He also claims that "transmission is affected through garments, vessels and earrings."
1403 – concave lens spectacles to treat myopia
early 16th century: Paracelsus, an alchemist by trade, rejects occultism and pioneers the use of chemicals and minerals in medicine

1500–1800

1543 – Andreas Vesalius publishes De Fabrica Corporis Humani which corrects Greek medical errors and revolutionizes European medicine
1546 – Girolamo Fracastoro proposes that epidemic diseases are caused by transferable seedlike entities
1553 – Miguel Serveto describes the circulation of blood through the lungs. He is accused of heresy and burned at the stake
1556 – Amato Lusitano describes venous valves in the Ázigos vein
1559 – Realdo Colombo describes the circulation of blood through the lungs in detail
1563 – Garcia de Orta founds tropical medicine with his treatise on Indian diseases and treatments
1596 – Li Shizhen publishes Běncǎo Gāngmù or Compendium of Materia Medica
1603 – Girolamo Fabrici studies leg veins and notices that they have valves which allow blood to flow only toward the heart
1628 – William Harvey explains the circulatory system in Exercitatio Anatomica de Motu Cordis et Sanguinis in Animalibus
1701 – Giacomo Pylarini gives the first smallpox innoculations in Europe. They were widely practised in the east before then.
1736 – Claudius Aymand performs the first successful appendectomy
1747 – James Lind discovers that citrus fruits prevent scurvy
1774 – Joseph Priestley discovers nitrous oxide, nitric oxide, ammonia, hydrogen chloride and oxygen
1785 – William Withering publishes "An Account of the Foxglove" the first systematic description of digitalis in treating dropsy
1790 – Samuel Hahnemann rages against the prevalent practice of bloodletting as a universal cure and founds homeopathy
1796 – Edward Jenner develops a smallpox vaccination method
1799 – Humphry Davy discovers the anesthetic properties of nitrous oxide

1800 – 1899

1800 – Humphry Davy announces the anaesthetic properties of nitrous oxide
1816 – Rene Laennec invents the stethoscope
1818 – James Blundell performs the first successful human blood transfusion.
1842 – Crawford Long performs the first surgical operation using anaesthesia with ether
1847 – Ignaz Semmelweis discovers how to prevent puerperal fever
1849 – Elizabeth Blackwell is the first woman to gain a medical degree
1855 – first rubber condom
1867 – Lister publishes Antiseptic Principle of the Practice of Surgery, based partly on Pasteur's work.
1870– Louis Pasteur and Robert Koch establish the germ theory of disease
1879 – first vaccine for cholera
1881 – Louis Pasteur develops an anthrax vaccine
1882 – Louis Pasteur develops a rabies vaccine
1890– Emil von Behring discovers antitoxins and uses them to develop tetanus and diphtheria vaccines
1895 – Wilhelm Conrad Röntgen discovers medical use of X-rays in medical imaging

1900 – 1999

1901 – Karl Landsteiner discovers the existence of different human blood types
1901 – Alois Alzheimer identifies the first case of what becomes known as Alzheimer's disease
1903 - Willem Einthoven discovers electrocardiography (ECG/EKG)
1906 – Frederick Hopkins suggests the existence of vitamins and suggests that a lack of vitamins causes scurvy and rickets
1907 – Paul Ehrlich develops a chemotherapeutic cure for sleeping sickness
1908 – Victor Horsley and R. Clarke invents the stereotactic method
1909 – First Intrauterine device described by Richard Richter.
1910 - Hans Christian Jacobeus performs the first laparoscopy on humans
1917 – Julius Wagner-Jauregg discovers the malarial fever shock therapy for general paresis of the insane
1921 – Edward Mellanby discovers vitamin D and shows that its absence causes rickets
1921 – Frederick Banting and Charles Best discover insulin – important for the treatment of diabetes
1921 – Fidel Pagés pioneers epidural anesthesia
1923 – First vaccine for Diphtheria
1926 – First vaccine for Pertussis
1927 – First vaccine for Tuberculosis
1927 – First vaccine for Tetanus
1928 – Alexander Fleming discovers penicillin
1929 – Hans Berger discovers human electroencephalography
1932 – Gerhard Domagk develops a chemotherapeutic cure for streptococcus
1933 – Manfred Sakel discovers insulin shock therapy
1935 – Ladislas J. Meduna discovers metrazol shock therapy
1935 – First vaccine for Yellow Fever
1936 – Egas Moniz discovers prefrontal lobotomy for treating mental diseases
1938 – Ugo Cerletti and Lucio Bini discover electroconvulsive therapy
1943 – Willem Kolff build the first dialysis machine
1949 – First implant of intraocular lens, by Sir Harold Ridley
1952 – Jonas Salk develops the first polio vaccine
1954 - Joseph Murray performs the first human kidney transplant (on identical twins)
1957 – William Grey Walter invents the brain EEG topography (toposcope)
1960 – Invention of Cardiopulmonary resuscitation (CPR)
1960 – First combined oral contraceptive approved by the FDA
1962 – First Oral Polio Vaccine
1963 - Thomas Starzl performs the first human liver transplant
1963 - James Hardy performs the first human lung transplant
1964 – First vaccine for Measles
1965 – Frank Pantridge installs the first portable defibrillator
1965 – First commercial ultrasound
1966 - Richard Lillehei performs the first human pancreas transplant
1967 – First vaccine for Mumps
1967 – Christiaan Barnard performs the first human heart transplant
1970 – First vaccine for Rubella
1970 - Cyclosporine, the first effective immunosuppressive drug is introduced in organ transplant practice
1971 – Sir Godfrey Hounsfield invents the first commercial CT scanner
1976 – First commercial PET scanner
1978 – Last fatal case of smallpox
1980 – Raymond Damadian builds first commercial MRI scanner
1981 – First vaccine for Hepatitis B
1981 - Bruce Reitz performs the first human heart-lung combined transplant
1987 – Ben Carson, leading a 70-member medical team in Germany, was the first to separate occipital craniopagus twins.
1992 – First vaccine for Hepatitis A available

2000 – present

2003 – Carlo Urbani, of Doctors without Borders alerted the World Health Organization to the threat of the SARS virus, triggering the most effective response to an epidemic in history. Urbani succumbs to the disease himself in less than a month.
2005 – Jean-Michel Dubernard performs the first partial face transplant
2006 – First HPV vaccine approved
2006 – Second rotavirus vaccine approved (first was withdrawn)
2008 – Laurent Lantieri performs the first full face transplant

See also


(source:wikipedia)

Medicine

Medicine is the science and art of healing. It encompasses a variety of health care practices evolved to maintain and restore health by the prevention and treatment of illness.
Contemporary medicine applies health science, biomedical research, and medical technology to diagnose and treat injury and disease, typically through medication, surgery, or some other form of therapy. The word medicine is derived from the Latin ars medicina, meaning the art of healing.
Though medical technology and clinical expertise are pivotal to contemporary medicine, successful face-to-face relief of actual suffering continues to require the application of ordinary human feeling and compassion, known in English as bedside manner.

History

Prehistoric medicine incorporated plants (herbalism), animal parts and minerals. In many cases these materials were used ritually as magical substances by priests, shamans, or medicine men. Well-known spiritual systems include animism (the notion of inanimate objects having spirits), spiritualism (an appeal to gods or communion with ancestor spirits); shamanism (the vesting of an individual with mystic powers); and divination (magically obtaining the truth). The field of medical anthropology examines the ways in which culture and society are organized around or impacted by issues of health, health care and related issues.
Statuette of ancient Egyptian physician Imhotep, the first
physician from antiquity known by name,.
An ancient Greek patient gets medical treatment: this aryballos (circa 480-470 BCE, now in Paris's Louvre Museum) probably contained healing oil
Early records on medicine have been discovered from ancient Egyptian medicine, Babylonian medicine, Ayurvedic medicine (in the Indian subcontinent), classical Chinese medicine (predecessor to the modern traditional Chinese Medicine), and ancient Greek medicine and Roman medicine. The Egyptian Imhotep (3rd millennium BC) is the first physician in history known by name. Earliest records of dedicated hospitals come from Mihintale in Sri Lanka where evidence of dedicated medicinal treatment facilities for patients are found. The Indian surgeon Sushruta described numerous surgical operations, including the earliest forms of plastic surgery.
An ancient Greek patient gets medical treatment: this aryballos (circa480-470 BCE,
 now in Paris's Louvre Museum) probably contained healing oil,.
The Greek physician Hippocrates, considered the "father of medicine", laid the foundation for a rational approach to medicine. Hippocrates introduced the Hippocratic Oath for physicians, which is still relevant and in use today, and was the first to categorize illnesses as acute, chronic, endemic and epidemic, and use terms such as, "exacerbation, relapse, resolution, crisis, paroxysm, peak, and convalescence".
The Greek physician Galen was also one of the greatest surgeons of the ancient world and performed many audacious operations, including brain and eye surgeries. After the fall of the Western Roman Empire and the onset of the Early Middle Ages, the Greek tradition of medicine went into decline in Western Europe, although it continued uninterrupted in the Eastern Roman (Byzantine) Empire.
After 750 CE, the Muslim Arab world had the works of Hippocrates, Galen and Sushruta translated into Arabic, and Islamic physicians engaged in some significant medical research. Notable Islamic medical pioneers include the polymath, Avicenna, who, along with Imhotep and Hippocrates, has also been called the "father of medicine". He wrote The Canon of Medicine, considered one of the most famous books in the history of medicine. Others include Abulcasis, Avenzoar, Ibn al-Nafis, and Averroes. Rhazes  was one of first to question the Greek theory of humorism, which nevertheless remained influential in both medieval Western and medieval Islamic medicine. The Islamic Bimaristan hospitals were an early example of public hospitals.
However, the fourteenth and fifteenth century Black Death was just as devastating to the Middle East as to Europe, and it has even been argued that Western Europe was generally more effective in recovering from the pandemic than the Middle East. In the early modern period, important early figures in medicine and anatomy emerged in Europe, including Gabriele Falloppio and William Harvey.
The major shift in medical thinking was the gradual rejection, especially during the Black Death in the 14th and 15th centuries, of what may be called the 'traditional authority' approach to science and medicine. This was the notion that because some prominent person in the past said something must be so, then that was the way it was, and anything one observed to the contrary was an anomaly (which was paralleled by a similar shift in European society in general - see Copernicus's rejection of Ptolemy's theories on astronomy). Physicians like Ibn al-Nafis and Vesalius improved upon or disproved some of the theories from the past.
Modern scientific biomedical research (where results are testable and reproducible) began to replace early Western traditions based on herbalism, the Greek "four humours" and other such pre-modern notions. The modern era really began with Edward Jenner's discovery of the smallpox vaccine at the end of the 18th century (inspired by the method of inoculation earlier practiced in Asia), Robert Koch's discoveries around 1880 of the transmission of disease by bacteria, and then the discovery of antibiotics around 1900.
The post-18th century modernity period brought more groundbreaking researchers from Europe. From Germany and Austrian doctors (such as Rudolf Virchow, Wilhelm Conrad Röntgen, Karl Landsteiner, and Otto Loewi) made contributions. In the United Kingdom Alexander Fleming, Joseph Lister, Francis Crick, and Florence Nightingale are considered important. From New Zealand and Australia came Maurice Wilkins, Howard Florey, and Frank Macfarlane Burnet).
In the United States William Williams Keen, Harvey Cushing, William Coley, James D. Watson, Italy (Salvador Luria), Switzerland (Alexandre Yersin), Japan (Kitasato Shibasaburō), and France (Jean-Martin Charcot, Claude Bernard, Paul Broca and others did significant work). Russian Nikolai Korotkov also did significant work, as did Sir William Osler and Harvey Cushing.
As science and technology developed, medicine became more reliant upon medications. Throughout history and in Europe right until the late 18th century not only animal and plant products were used as medicine, but also human body parts and fluids. Pharmacology developed from herbalism and many drugs are still derived from plants (atropine, ephedrine, warfarin, aspirin, digoxin, vinca alkaloids, taxol, hyoscine, etc.). Vaccines were discovered by Edward Jenner and Louis Pasteur.
The first antibiotic was arsphenamine / Salvarsan discovered by Paul Ehrlich in 1908 after he observed that bacteria took up toxic dyes that human cells did not. The first major class of antibiotics was the sulfa drugs, derived by French chemists originally from azo dyes.
Pharmacology has become increasingly sophisticated; modern biotechnology allows drugs targeted towards specific physiological processes to be developed, sometimes designed for compatibility with the body to reduce side-effects. Genomics and knowledge of human genetics is having some influence on medicine, as the causative genes of most monogenic genetic disorders have now been identified, and the development of techniques in molecular biology and genetics are influencing medical technology, practice and decision-making.
Evidence-based medicine is a contemporary movement to establish the most effective algorithms of practice (ways of doing things) through the use of systematic reviews and meta-analysis. The movement is facilitated by modern global information science, which allows as much of the available evidence as possible to be collected and analyzed according to standard protocols which are then disseminated to healthcare providers. One problem with this 'best practice' approach is that it could be seen to stifle novel approaches to treatment. The Cochrane Collaboration leads this movement. A 2001 review of 160 Cochrane systematic reviews revealed that, according to two readers, 21.3% of the reviews concluded insufficient evidence, 20% concluded evidence of no effect, and 22.5% concluded positive effect.

Clinical practice
The Doctor, by Sir Luke Fildes (1891),.
In clinical practice doctors personally assess patients in order to diagnose, treat, and prevent disease using clinical judgment. The doctor-patient relationship typically begins an interaction with an examination of the patient's medical history and medical record, followed a medical interview and a physical examination. Basic diagnostic medical devices (e.g. stethoscope, tongue depressor) are typically used. After examination for signs and interviewing for symptoms, the doctor may order medical tests (e.g. blood tests), take a biopsy, or prescribe pharmaceutical drugs or other therapies. Differential diagnosis methods help to rule out conditions based on the information provided. During the encounter, properly informing the patient of all relevant facts is an important part of the relationship and the development of trust. The medical encounter is then documented in the medical record, which is a legal document in many jurisdictions. Followups may be shorter but follow the same general procedure.
The components of the medical interview and encounter are:
Chief complaint (cc): the reason for the current medical visit. These are the 'symptoms.' They are in the patient's own words and are recorded along with the duration of each one. Also called 'presenting complaint.'
History of present illness / complaint (HPI): the chronological order of events of symptoms and further clarification of each symptom.
Current activity: occupation, hobbies, what the patient actually does.
Medications (Rx): what drugs the patient takes including prescribed, over-the-counter, and home remedies, as well as alternative and herbal medicines/herbal remedies. Allergies are also recorded.
Past medical history (PMH/PMHx): concurrent medical problems, past hospitalizations and operations, injuries, past infectious diseases and/or vaccinations, history of known allergies.
Social history (SH): birthplace, residences, marital history, social and economic status, habits (including diet, medications, tobacco, alcohol).
Family history (FH): listing of diseases in the family that may impact the patient. A family tree is sometimes used.
Review of systems (ROS) or systems inquiry: a set of additional questions to ask which may be missed on HPI: a general enquiry (have you noticed any weight loss, change in sleep quality, fevers, lumps and bumps? etc.), followed by questions on the body's main organ systems (heart, lungs, digestive tract, urinary tract, etc.).
The physical examination is the examination of the patient looking for signs of disease ('Symptoms' are what the patient volunteers, 'Signs' are what the healthcare provider detects by examination). The healthcare provider uses the senses of sight, hearing, touch, and sometimes smell (e.g. in infection, uremia, diabetic ketoacidosis). Taste has been made redundant by the availability of modern lab tests. Four actions are taught as the basis of physical examination: inspection, palpation (feel), percussion (tap to determine resonance characteristics), and auscultation (listen). This order may be modified depending on the main focus of the examination (e.g. a joint may be examined by simply "look, feel, move". Having this set order is an educational tool that encourages the practitioner to be systematic in their approach and refrain from using tools such as the stethoscope before they have fully evaluated the other modalities.
The clinical examination involves study of:
Vital signs including height, weight, body temperature, blood pressure, pulse, respiration rate, hemoglobin oxygen saturation
General appearance of the patient and specific indicators of disease (nutritional status, presence of jaundice, pallor or clubbing)
Skin
See also
Human skin
Head, eye, ear, nose, and throat (HEENT)
Cardiovascular (heart and blood vessels)
Respiratory (large airways and lungs)
Abdomen and rectum
Genitalia (and pregnancy if the patient is or could be pregnant)
Musculoskeletal (including spine and extremities)
Neurological (consciousness, awareness, brain, vision, cranial nerves, spinal cord and peripheral nerves)
Psychiatric (orientation, mental state, evidence of abnormal perception or thought).
It is likely to be focussed on areas of interest highlighted in the medical history and may not include everything listed above.
Laboratory and imaging studies results may be obtained, if necessary.
The medical decision-making (MDM) process involves analysis and synthesis of all the above data to come up with a list of possible diagnoses (the differential diagnoses), along with an idea of what needs to be done to obtain a definitive diagnosis that would explain the patient's problem.
The treatment plan may include ordering additional laboratory tests and studies, starting therapy, referral to a specialist, or watchful observation. Follow-up may be advised.
This process is used by primary care providers as well as specialists. It may take only a few minutes if the problem is simple and straightforward. On the other hand, it may take weeks in a patient who has been hospitalized with bizarre symptoms or multi-system problems, with involvement by several specialists.
On subsequent visits, the process may be repeated in an abbreviated manner to obtain any new history, symptoms, physical findings, and lab or imaging results or specialist consultations.

Institutions

Contemporary medicine is in general conducted within health care systems. Legal, credentialing and financing frameworks are established by individual governments, augmented on occasion by international organizations. The characteristics of any given health care system have significant impact on the way medical care is provided.
Advanced industrial countries (with the exception of the United States)  and many developing countries provide medical services through a system of universal health care which aims to guarantee care for all through a single-payer health care system, or compulsory private or co-operative health insurance. This is intended to ensure that the entire population has access to medical care on the basis of need rather than ability to pay. Delivery may be via private medical practices or by state-owned hospitals and clinics, or by charities; most commonly by a combination of all three.
Most tribal societies, but also some communist countries (e.g. China) and the United States, provide no guarantee of health care for the population as a whole. In such societies, health care is available to those that can afford to pay for it or have self insured it (either directly or as part of an employment contract) or who may be covered by care financed by the government or tribe directly.


Modern drug ampoules
Transparency of information is another factor defining a delivery system. Access to information on conditions, treatments, quality and pricing greatly affects the choice by patients / consumers and therefore the incentives of medical professionals. While the US health care system has come under fire for lack of openness, new legislation may encourage greater openness. There is a perceived tension between the need for transparency on the one hand and such issues as patient confidentiality and the possible exploitation of information for commercial gain on the other.

Delivery
See also: clinic, hospital, and hospice
Provision of medical care is classified into primary, secondary and tertiary care categories.
Primary care medical services are provided by physicians, physician assistants, nurse practitioners, or other health professionals who have first contact with a patient seeking medical treatment or care. These occur in physician offices, clinics, nursing homes, schools, home visits and other places close to patients. About 90% of medical visits can be treated by the primary care provider. These include treatment of acute and chronic illnesses, preventive care and health education for all ages and both sexes.
Secondary care medical services are provided by medical specialists in their offices or clinics or at local community hospitals for a patient referred by a primary care provider who first diagnosed or treated the patient. Referrals are made for those patients who required the expertise or procedures performed by specialists. These include both ambulatory care and inpatient services, emergency rooms, intensive care medicine, surgery services, physical therapy, labor and delivery, endoscopy units, diagnostic laboratory and medical imaging services, hospice centers, etc. Some primary care providers may also take care of hospitalized patients and deliver babies in a secondary care setting.
Tertiary care medical services are provided by specialist hospitals or regional centers equipped with diagnostic and treatment facilities not generally available at local hospitals. These include trauma centers, burn treatment centers, advanced neonatology unit services, organ transplants, high-risk pregnancy, radiation oncology, etc.
Modern medical care also depends on information - still delivered in many health care settings on paper records, but increasingly nowadays by electronic means.

Branches

Working together as an interdisciplinary team, many highly trained health professionals besides medical practitioners are involved in the delivery of modern health care. Examples include: nurses, emergency medical technicians and paramedics, laboratory scientists, pharmacists, physiotherapists, respiratory therapists, speech therapists, occupational therapists, radiographers, dietitians and bioengineers.
The scope and sciences underpinning human medicine overlap many other fields. Dentistry, while a separate discipline from medicine, is considered a medical field.
A patient admitted to hospital is usually under the care of a specific team based on their main presenting problem, e.g. the Cardiology team, who then may interact with other specialties, e.g. surgical, radiology, to help diagnose or treat the main problem or any subsequent complications / developments.
Physicians have many specializations and subspecializations into certain branches of medicine, which are listed below. There are variations from country to country regarding which specialties certain subspecialties are in.
The main branches of medicine used in Wikipedia are:
Basic sciences of medicine; this is what every physician is educated in, and some return to in biomedical research.
Medical specialties
Interdisciplinary fields, where different medical specialties are mixed to function in certain occasions.

Basic sciences
Anatomy is the study of the physical structure of organisms. In contrast to macroscopic or gross anatomy, cytology and histology are concerned with microscopic structures.
Biochemistry is the study of the chemistry taking place in living organisms, especially the structure and function of their chemical components.
Biomechanics is the study of the structure and function of biological systems by means of the methods of Mechanics.
Biostatistics is the application of statistics to biological fields in the broadest sense. A knowledge of biostatistics is essential in the planning, evaluation, and interpretation of medical research. It is also fundamental to epidemiology and evidence-based medicine.
Biophysics is an interdisciplinary science that uses the methods of physics and physical chemistry to study biological systems.
Cytology is the microscopic study of individual cells.
Embryology is the study of the early development of organisms.
Endocrinology is the study of hormones and their effect throughout the body of animals.
Epidemiology is the study of the demographics of disease processes, and includes, but is not limited to, the study of epidemics.
Genetics is the study of genes, and their role in biological inheritance.
Histology is the study of the structures of biological tissues by light microscopy, electron microscopy and immunohistochemistry.
Immunology is the study of the immune system, which includes the innate and adaptive immune system in humans, for example.
Medical physics is the study of the applications of physics principles in medicine.
Microbiology is the study of microorganisms, including protozoa, bacteria, fungi, and viruses.
Molecular biology is the study of molecular underpinnings of the process of replication, transcription and translation of the genetic material.
Neuroscience includes those disciplines of science that are related to the study of the nervous system. A main focus of neuroscience is the biology and physiology of the human brain and spinal cord.
Nutrition science (theoretical focus) and dietetics (practical focus) is the study of the relationship of food and drink to health and disease, especially in determining an optimal diet. Medical nutrition therapy is done by dietitians and is prescribed for diabetes, cardiovascular diseases, weight and eating disorders, allergies, malnutrition, and neoplastic diseases.
Pathology as a science is the study of disease—the causes, course, progression and resolution thereof.
Pharmacology is the study of drugs and their actions.
Photobiology is the study of the interactions between non-ionizing radiation and living organisms.
Physiology is the study of the normal functioning of the body and the underlying regulatory mechanisms.
Radiobiology is the study of the interactions between ionizing radiation and living organisms.
Toxicology is the study of hazardous effects of drugs and poisons.

Specialties
Main article: Medical specialty
In the broadest meaning of "medicine", there are many different specialties. In the UK most specialities will have their own body or college (collectively known as the Royal Colleges, although currently not all use the term "Royal") which have their own entrance exam. The development of a speciality is often driven by new technology (such as the development of effective anaesthetics) or ways of working (e.g. emergency departments) which leads to the desire to form a unifying body of doctors and thence the prestige of administering their own exam.
Within medical circles, specialities usually fit into one of two broad categories: "Medicine" and "Surgery." "Medicine" refers to the practice of non-operative medicine, and most subspecialties in this area require preliminary training in "Internal Medicine". In the UK this would traditionally have been evidenced by obtaining the MRCP (An exam allowing Membership of the Royal College of Physicians or the equivalent college in Scotland or Ireland). "Surgery" refers to the practice of operative medicine, and most subspecialties in this area require preliminary training in "General Surgery." (In the UK: Membership of the Royal College of Surgeons of England (MRCS).)There are some specialties of medicine that at the present time do not fit easily into either of these categories, such as radiology, pathology, or anesthesia. Most of these have branched from one or other of the two camps above - for example anaesthesia developed first as a faculty of the Royal College of Surgeons (for which MRCS/FRCS would have been required) before becoming the Royal College of Anaesthetists and membership of the college is by sitting the FRCA (Fellowship of the Royal College of Anesthetists).

Surgery
Main article: Surgery
Surgical specialties employ operative treatment. In addition, surgeons must decide when an operation is necessary, and also treat many non-surgical issues, particularly in the surgical intensive care unit (SICU), where a variety of critical issues arise. Surgeons must also manage pre-operative, post-operative, and potential surgical candidates on the hospital wards. Surgery has many sub-specialties, including general surgery, cardiovascular surgery, colorectal surgery, neurosurgery, maxillofacial surgery, orthopedic surgery, otolaryngology, plastic surgery, oncologic surgery, transplant surgery, trauma surgery, urology, vascular surgery, and pediatric surgery. In some centers, anesthesiology is part of the division of surgery (for historical and logistical reasons), although it is not a surgical discipline. Other medical specialties may employ surgical procedures, such as ophthalmology and dermatology, but are not considered surgical sub-specialties per se.
Surgical training in the U.S. requires a minimum of five years of residency after medical school. Sub-specialties of surgery often require seven or more years. In addition, fellowships can last an additional one to three years. Because post-residency fellowships can be competitive, many trainees devote two additional years to research. Thus in some cases surgical training will not finish until more than a decade after medical school. Furthermore, surgical training can be very difficult and time consuming.

'Medicine' as a specialty
Main article: Internal Medicine
Internal medicine is the medical specialty concerned with the diagnosis, management and nonsurgical treatment of unusual or serious diseases, either of one particular organ system or of the body as a whole. According to some sources, an emphasis on internal structures is implied. In North America, specialists in internal medicine are commonly called "internists". Elsewhere, especially in Commonwealth nations, such specialists are often called physicians. These terms, internist or physician (in the narrow sense, common outside North America), generally exclude practitioners of gynecology and obstetrics, pathology, psychiatry, and especially surgery and its subspecialities.
Because their patients are often seriously ill or require complex investigations, internists do much of their work in hospitals. Formerly, many internists were not subspecialized; such general physicians would see any complex nonsurgical problem; this style of practice has become much less common. In modern urban practice, most internists are subspecialists: that is, they generally limit their medical practice to problems of one organ system or to one particular area of medical knowledge. For example, gastroenterologists and nephrologists specialize respectively in diseases of the gut and the kidneys.
In Commonwealth and some other countries, specialist pediatricians and geriatricians are also described as specialist physicians (or internists) who have subspecialized by age of patient rather than by organ system. Elsewhere, especially in North America, general pediatrics is often a form of Primary care.
There are many subspecialities (or subdisciplines) of internal medicine:
Cardiology
Critical care medicine
Endocrinology
Gastroenterology
Geriatrics
Haematology
Hepatology
Infectious diseases
Nephrology
Oncology
Pediatrics
Pulmonology/Pneumology/Respirology
Rheumatology
Sleep medicine
Training in internal medicine (as opposed to surgical training), varies considerably across the world: see the articles on Medical education and Physician for more details. In North America, it requires at least three years of residency training after medical school, which can then be followed by a one to three year fellowship in the subspecialties listed above. In general, resident work hours in medicine are less than those in surgery, averaging about 60 hours per week in the USA. This difference does not apply in the UK where all doctors are now required by law to work less than 48 hours per week on average.

Diagnostic specialties
Clinical laboratory sciences are the clinical diagnostic services which apply laboratory techniques to diagnosis and management of patients. In the United States these services are supervised by a pathologist. The personnel that work in these medical laboratory departments are technically trained staff who do not hold medical degrees, but who usually hold an undergraduate medical technology degree, who actually perform the tests, assays, and procedures needed for providing the specific services. Subspecialties include Transfusion medicine, Cellular pathology, Clinical chemistry, Hematology, Clinical microbiology and Clinical immunology.
Pathology as a medical specialty is the branch of medicine that deals with the study of diseases and the morphologic, physiologic changes produced by them. As a diagnostic specialty, pathology can be considered the basis of modern scientific medical knowledge and plays a large role in evidence-based medicine. Many modern molecular tests such as flow cytometry, polymerase chain reaction (PCR), immunohistochemistry, cytogenetics, gene rearrangements studies and fluorescent in situ hybridization (FISH) fall within the territory of pathology.
Radiology is concerned with imaging of the human body, e.g. by x-rays, x-ray computed tomography, ultrasonography, and nuclear magnetic resonance tomography.
Nuclear medicine is concerned with studying human organ systems by administering radiolabelled substances (radiopharmaceuticals) to the body, which can then be imaged outside the body by a gamma camera or a PET scanner. Each radiopharmaceutical consists of two parts: a tracer which is specific for the function under study (e.g., neurotransmitter pathway, metabolic pathway, blood flow, or other), and a radionuclide (usually either a gamma-emitter, or a positron emitter). There is a degree of overlap between nuclear medicine and radiology, as evidenced by the emergence of combined devices such as the PET/CT scanner.
Clinical neurophysiology is concerned with testing the physiology or function of the central and peripheral aspects of the nervous system. These kinds of tests can be divided into recordings of: (1) spontaneous or continuously running electrical activity, or (2) stimulus evoked responses. Subspecialties include Electroencephalography, Electromyography, Evoked potential, Nerve conduction study and Polysomnography. Sometimes these tests are performed by techs without a medical degree, but the interpretation of these tests is done by a medical professional.

Other major specialties
The followings are some major medical specialties that do not directly fit into any of the above mentioned groups.
Dermatology is concerned with the skin and its diseases. In the UK, dermatology is a subspecialty of general medicine.
Emergency medicine is concerned with the diagnosis and treatment of acute or life-threatening conditions, including trauma, surgical, medical, pediatric, and psychiatric emergencies.
Family medicine, family practice, general practice or primary care is, in many countries, the first port-of-call for patients with non-emergency medical problems.
Obstetrics and gynecology (often abbreviated as OB/GYN (American English) or Obs & Gynae (British English)) are concerned respectively with childbirth and the female reproductive and associated organs. Reproductive medicine and fertility medicine are generally practiced by gynecological specialists.
Medical Genetics is concerned with the diagnosis and management of hereditary disorders.
Neurology is concerned with diseases of the nervous system. In the UK, neurology is a subspecialty of general medicine.
Ophthalmology exclusively concerned with the eye and ocular adnexa, combining conservative and surgical therapy.
Pediatrics (AE) or paediatrics (BE) is devoted to the care of infants, children, and adolescents. Like internal medicine, there are many pediatric subspecialties for specific age ranges, organ systems, disease classes, and sites of care delivery.
Physical medicine and rehabilitation (or physiatry) is concerned with functional improvement after injury, illness, or congenital disorders.
Psychiatry is the branch of medicine concerned with the bio-psycho-social study of the etiology, diagnosis, treatment and prevention of cognitive, perceptual, emotional and behavioral disorders. Related non-medical fields include psychotherapy and clinical psychology.
Preventive medicine is the branch of medicine concerned with preventing disease.
Community health or public health is an aspect of health services concerned with threats to the overall health of a community based on population health analysis.
Occupational medicine's principal role is the provision of health advice to organizations and individuals to ensure that the highest standards of health and safety at work can be achieved and maintained.
Aerospace medicine deals with medical problems related to flying and space travel.

Interdisciplinary fields
Some interdisciplinary sub-specialties of medicine include:
Addiction medicine deals with the treatment of addiction.
Bioethics is a field of study which concerns the relationship between biology, science, medicine and ethics, philosophy and theology.
Biomedical Engineering is a field dealing with the application of engineering principles to medical practice.
Clinical pharmacology is concerned with how systems of therapeutics interact with patients.
Conservation medicine studies the relationship between human and animal health, and environmental conditions. Also known as ecological medicine, environmental medicine, or medical geology.
Disaster medicine deals with medical aspects of emergency preparedness, disaster mitigation and management.
Diving medicine (or hyperbaric medicine) is the prevention and treatment of diving-related problems.
Evolutionary medicine is a perspective on medicine derived through applying evolutionary theory.
Forensic medicine deals with medical questions in legal context, such as determination of the time and cause of death.
Gender-based medicine studies the biological and physiological differences between the human sexes and how that affects differences in disease.
Hospice and Palliative Medicine is a relatively modern branch of clinical medicine that deals with pain and symptom relief and emotional support in patients with terminal illnesses including cancer and heart failure.
Hospital medicine is the general medical care of hospitalized patients. Physicians whose primary professional focus is hospital medicine are called hospitalists in the USA.
Laser medicine involves the use of lasers in the diagnostics and/or treatment of various conditions.
Medical humanities includes the humanities (literature, philosophy, ethics, history and religion), social science (anthropology, cultural studies, psychology, sociology), and the arts (literature, theater, film, and visual arts) and their application to medical education and practice.
Medical informatics, medical computer science, medical information and eHealth are relatively recent fields that deal with the application of computers and information technology to medicine.
Nosology is the classification of diseases for various purposes.
Nosokinetics is the science/subject of measuring and modelling the process of care in health and social care systems.
Pain management (also called pain medicine, or algiatry) is the medical discipline concerned with the relief of pain.
Pharmacogenomics is a form of individualized medicine.
Sexual medicine is concerned with diagnosing, assessing and treating all disorders related to sexuality.
Sports medicine deals with the treatment and preventive care of athletes, amateur and professional. The team includes specialty physicians and surgeons, athletic trainers, physical therapists, coaches, other personnel, and, of course, the athlete.
Therapeutics is the field, more commonly referenced in earlier periods of history, of the various remedies that can be used to treat disease and promote health .
Travel medicine or emporiatrics deals with health problems of international travelers or travelers across highly different environments.
Urgent care focuses on delivery of unscheduled, walk-in care outside of the hospital emergency department for injuries and illnesses that are not severe enough to require care in an emergency department. In some jurisdictions this function is combined with the emergency room.
Veterinary medicine; veterinarians apply similar techniques as physicians to the care of animals.
Wilderness medicine entails the practice of medicine in the wild, where conventional medical facilities may not be available.
Many other health science fields, e.g. dietetics

Education

Main articles: Medical education and Medical school

Painted by Toulouse-Lautrec in the year of his own death: an examination in the Paris faculty of medicine, 1901
Medical education and training varies around the world. It typically involves entry level education at a university medical school, followed by a period of supervised practice or internship, and/or residency. This can be followed by postgraduate vocational training. A variety of teaching methods have been employed in medical education, still itself a focus of active research.
Many regulatory authorities require continuing medical education, since knowledge, techniques and medical technology continue to evolve at a rapid rate.

Legal controls

In most countries, it is a legal requirement for a medical doctor to be licensed or registered. In general, this entails a medical degree from a university and accreditation by a medical board or an equivalent national organization, which may ask the applicant to pass exams. This restricts the considerable legal authority of the medical profession to physicians that are trained and qualified by national standards. It is also intended as an assurance to patients and as a safeguard against charlatans that practice inadequate medicine for personal gain. While the laws generally require medical doctors to be trained in "evidence based", Western, or Hippocratic Medicine, they are not intended to discourage different paradigms of health.
Doctors who are negligent or intentionally harmful in their care of patients can face charges of medical malpractice and be subject to civil, criminal, or professional sanctions.

Controversy

The Catholic social theorist Ivan Illich subjected contemporary western medicine to detailed attack in his Medical Nemesis, first published in 1975. He argued that the medicalization in recent decades of so many of life's vicissitudes — birth and death, for example — frequently caused more harm than good and rendered many people in effect lifelong patients. He marshalled a body of statistics to show what he considered the shocking extent of post-operative side-effects and drug-induced illness in advanced industrial society. He was the first to introduce to a wider public the notion of iatrogenesis. Others have since voiced similar views, but none so trenchantly, perhaps, as Illich.
Through the course of the twentieth century, healthcare providers focused increasingly on the technology that was enabling them to make dramatic improvements in patients' health. The ensuing development of a more mechanistic, detached practice, with the perception of an attendant loss of patient-focused care, known as the medical model of health, led to criticisms that medicine was neglecting a holistic model.The inability of modern medicine to properly address some common complaints continues to prompt many people to seek support from alternative medicine. Although most alternative approaches lack scientific validation, some, notably acupuncture for some conditions and certain herbs, are backed by evidence.
Medical errors and overmedication are also the focus of complaints and negative coverage. Practitioners of human factors engineering believe that there is much that medicine may usefully gain by emulating concepts in aviation safety, where it is recognized that it is dangerous to place too much responsibility on one "superhuman" individual and expect him or her not to make errors. Reporting systems and checking mechanisms are becoming more common in identifying sources of error and improving practice. Clinical versus statistical, algorithmic diagnostic methods were famously examined in psychiatric practice in a 1954 book by Paul E. Meehl, which controversially found statistical methods superior. A 2000 meta-analysis comparing these methods in both psychology and medicine found that statistical or "mechanical" diagnostic methods were generally, although not always, superior.
Disparities in quality of care given are often an additional cause of controversy. For example, elderly mentally ill patients received poorer care during hospitalization in a 2008 study. Rural poor African-American men were used in a study of syphilis that denied them basic medical care.

Honors and awards

The highest honor awarded in medicine is the Nobel Prize in Medicine, awarded since 1901 by the Royal Swedish Academy of Sciences.

Nobel Laureates in Physiology or Medicine
Patronage

There is a number of patron saints for physicians, the most important of whom are Saint Luke the Evangelist the physician and disciple of Christ, Saints Cosmas and Damian (3rd century physicians from Syria), and Saint Pantaleon (4th century physician from Nicomedia). Archangel Raphael is also considered a patron saint of physicians.
The patron saints for surgeons are Saint Luke the Evangelist the physician and disciple of Christ, Saints Cosmas and Damian (3rd century physicians from Syria), Saint Quentin (3rd century saint from France), Saint Foillan (7th century saint from Ireland), and Saint Roch (14th century saint from France).



(source:wikipedia)